RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Metastatic recurrence in colorectal cancer arises from residual EMP1(+) cells.
Metastatic recurrence in colorectal cancer arises from residual EMP1(+) cells.
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大约30-40%接受原发肿瘤根治性切除的结直肠癌(CRC)患者将在随后几年内发生转移1。预防疾病复发的疗法仍是一个未满足的医疗需求。
在此,我们揭示了导致CRC复发的残留肿瘤细胞的身份和特征。对CRC患者样本的单细胞转录组分析显示,大多数与不良预后相关的基因由一个独特的肿瘤细胞群体表达,我们将其命名为高复发细胞(HRCs)。
我们建立了一种微卫星稳定型CRC的人源化小鼠模型,该模型在原发肿瘤手术切除后发生转移性复发。原发CRC手术后小鼠肝脏中隐匿的残留HRCs随时间推移产生多种细胞类型,包括LGR5+干细胞样肿瘤细胞2-4,并导致明显的转移性疾病。使用Emp1(编码上皮膜蛋白1)作为HRCs的标志基因,我们追踪并选择性消除了该细胞群体。EMP1高表达细胞的基因消融阻止了转移性复发,小鼠在手术后保持无病状态。
我们还发现,富含HRC的微转移灶中有T细胞浸润,但在生长过程中逐渐变得免疫排斥。新辅助免疫治疗消除了残留的转移细胞,并防止小鼠在手术后复发。
总之,我们的发现揭示了CRC残留疾病的细胞状态动态,并预期靶向HRCs的疗法可能有助于避免转移性复发。
Around 30-40% of patients with colorectal cancer (CRC) undergoing curative resection of the primary tumour will develop metastases in the subsequent years 1 . Therapies to prevent disease relapse remain an unmet medical need.
Here we uncover the identity and features of the residual tumour cells responsible for CRC relapse. An analysis of single-cell transcriptomes of samples from patients with CRC revealed that the majority of genes associated with a poor prognosis are expressed by a unique tumour cell population that we named high-relapse cells (HRCs).
We established a human-like mouse model of microsatellite-stable CRC that undergoes metastatic relapse after surgical resection of the primary tumour. Residual HRCs occult in mouse livers after primary CRC surgery gave rise to multiple cell types over time, including LGR5 + stem-like tumour cells 2-4 , and caused overt metastatic disease.
Using Emp1 (encoding epithelial membrane protein 1) as a marker gene for HRCs, we tracked and selectively eliminated this cell population. Genetic ablation of EMP1 high cells prevented metastatic recurrence and mice remained disease-free after surgery.
We also found that HRC-rich micrometastases were infiltrated with T cells, yet became progressively immune-excluded during outgrowth. Treatment with neoadjuvant immunotherapy eliminated residual metastatic cells and prevented mice from relapsing after surgery.
Together, our findings reveal the cell-state dynamics of residual disease in CRC and anticipate that therapies targeting HRCs may help to avoid metastatic relapse.
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